CSIRO Publishing Books Journals About Us Shopping Cart You are here: Journals > Crop & Pasture Science   
Crop & Pasture Science
  Plant Sciences, Sustainable Farming Systems & Food Quality
 
Search
 
 
  Advanced Search
   

Journal Home
About the Journal
Editorial Board
Contacts
Content
Current Issue
Just Accepted
All Issues
Most Read Papers
Special Issues
Research Fronts
Farrer Reviews
Sample Issue
For Authors
General Information
Notice to Authors
Submit Article
Open Access
For Referees
General Information
Review Article
Annual Referee Index
For Subscribers
Subscription Prices
Customer Service
Print Publication Dates

 Early Alert
Subscribe to our email Early Alert or RSS feeds for the latest journal papers.

 Connect with us
facebook   youtube

 PrometheusWiki
PrometheusWiki
Protocols in ecological and environmental plant physiology

 

Article << Previous     |     Next >>   Contents Vol 56(1)

Disease resistance genes in a doubled haploid population of two-rowed barley segregating for malting quality attributes

L. C. Emebiri A C, G. Platz B, D. B. Moody A

A Department of Primary Industries, Grains Innovation Park, Natimuk Road, Private Bag 260, Horsham, Vic. 3401, Australia.
B Department of Primary Industries, Hermitage Research Station, 604 Yangan Road, Warwick, Qld 4370, Australia.
C Corresponding author. Email: Livinus.Emebiri@dpi.vic.gov.au
 
PDF (267 KB) $25
 Export Citation
 Print
  


Abstract

Malting barley (Hordeum vulgare L.) improvement involves selection for many quality traits, but the search for and deployment of resistance genes has continued to be an equally important endeavour. As an aid to phenotypic selection in breeding programs, gene mapping can serve to characterise genes known to exist in elite breeding lines. In the present study, 180 doubled haploid lines derived from the cross of VB9524/ND11231*12 were screened for disease resistance under field and greenhouse conditions. Quantitative trait locus (QTL) mapping and classical genetic linkage approaches were used to identify and map QTLs for resistance to powdery mildew (Blumeria graminis f.sp. hordei), net form of net blotch (Pyrenophora teres f. teres) and stem rust (Puccinia graminis f.sp. tritici). The analyses offered a comparison between QTL mapping and traditional genetic linkage analysis. Both approaches identified a QTL for powdery mildew resistance on chromosome 1H, which mapped to the approximate genomic location of the Mla6 gene. Similarly, both methods identified a major QTL for resistance to net form of net blotch on chromosome 6H and for stem rust resistance on chromosome 7H. The QTL for stem rust resistance on 7H mapped to the approximate location of the Rpg1 gene. Classical linkage analysis identified the 3 QTLs with major effects, but was unable to detect 3 other loci with minor effects.

Keywords: two-row barley, molecular markers, QTL, linkage analysis, powdery mildew (Blumeria graminis f.sp. hordei), stem rust (Puccinia graminis f.sp. tritici), net form of net blotch (Pyrenophora teres f. teres).


   
Subscriber Login
Username:
Password:  

    


 
Top  Email this page
 
Legal & Privacy | Contact Us | Help

CSIRO

© CSIRO 1996-2012